FMRP links optimal codons to mRNA stability in neurons.
basic_science · Level V
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- Record sourced from PubMed, PMID 33199649.
- Also identified by DOI 10.1073/pnas.2009161117 and PMC identifier 7720238.
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Abstract
Fragile X syndrome (FXS) is caused by inactivation of the <i>FMR1</i> gene and loss of encoded FMRP, an RNA binding protein that represses translation of some of its target transcripts. Here we use ribosome profiling and RNA sequencing to investigate the dysregulation of translation in the mouse brain cortex. We find that most changes in ribosome occupancy on hundreds of mRNAs are largely driven by dysregulation in transcript abundance. Many down-regulated mRNAs, which are mostly responsible for neuronal and synaptic functions, are highly enriched for FMRP binding targets. RNA metabolic labeling demonstrates that, in FMRP-deficient cortical neurons, mRNA down-regulation is caused by elevated degradation and is correlated with codon optimality. Moreover, FMRP preferentially binds mRNAs with optimal codons, suggesting that it stabilizes such transcripts through direct interactions via the translational machinery. Finally, we show that the paradigm of genetic rescue of FXS-like phenotypes in FMRP-deficient mice by deletion of the <i>Cpeb1</i> gene is mediated by restoration of steady-state RNA levels and consequent rebalancing of translational homeostasis. Our data establish an essential role of FMRP in codon optimality-dependent mRNA stability as an important factor in FXS.
Medical subject headings
- Codon
- Fragile X Messenger Ribonucleoprotein 1
- Neurons
- RNA, Messenger